Keywords: Stability, Power transfer, Flexible a.c. transmission system (FACTS), Unified power flow controller (UPFC). IJSER

Size: px
Start display at page:

Download "Keywords: Stability, Power transfer, Flexible a.c. transmission system (FACTS), Unified power flow controller (UPFC). IJSER"

Transcription

1 International Journal of Scientific & Engineering Research, Volume, Issue, March-4 74 ISSN 9-8 IMPACT OF UPFC ON SWING, VOLTAGE STABILITY AND POWER TRANSFER CAPABILITY IN TRANSMISSION SYSTEM Mr. Rishi Kumar Singh Assistant Professor, MANIT, Bhopal (M.P.), India Dr. N.P. Patidar Associate Professor, MANIT, Bhopal (M.P.), India Abstract: Power flow control, in an existing long transmission line, plays a vital role in Power System area. This paper employs the unified power flow controller (UPFC) i.e. shunt-series connected compensation based FACTS device for the control of swings, voltage and the power flow in long distance transmission line. The proposed device is used in different locations such as sending end of the transmission line, middle and receiving end of the transmission line. Here also deals with determination of the optimal location of flexible a.c. transmission system (FACTS) devices for a long transmission line for damping-out swings, voltage and power transfer improvement. Here the concept of mid-point compensation is presenting for optimal location of FACTS. The results also show that optimal location depends upon voltage magnitude and the line loading and system initial operating conditions. In this paper the two area 4-machine test system were simulated using MATLAB Simulink environment. Keywords: Stability, Power transfer, Flexible a.c. transmission system (FACTS), Unified power flow controller (UPFC).. INTRODUCTION During steady-state operation of a power system, all the synchronous machines operate in parallel and together supply the total demand plus losses so that there is The flexible AC transmission system (FACTS) has equilibrium between these two. If a large disturbance received much attention in the last two decades. It uses occurs, this equilibrium is disturbed and the machines start high-current power electronic devices to control the 'swinging' with respect to each other []. Transient voltage, power flow, etc. of a transmission system. is the ability of the power system to maintain synchronism Some forms of FACTS devices are already available for when subjected to a severe disturbance, such as a short prototype installation [] and others are still under circuit on a transmission line [4]. Reactive power development. FACTS devices can be connected to a compensation is an important issue in electrical power transmission line in various ways, such as in series, shunt systems and series-shunt combine FACTS devices play an or a combination of series and shunt [, 8]. For example, important role in controlling the reactive power flow in the the static VAr compensator (SVC) and static synchronous power network, which in turn affects the system voltage compensator (STATCOM) are connected in shunt; static fluctuations and swing []. The UPFC are members synchronous series compensator (SSSC) and thyristorcontrolled series capacitor (TCSC) are connected in series; combination with the system with the system and are of the FACTS family that are connected in series and shunt thyristor controlled phase shifting transformer (TCPST) and highly effective in improving the voltage and swing unified power flow controller (UPFC) are connected in a [6]. series and shunt combination. The terms and definitions of various FACTS devices are described in a recent IEEE article [4]. FACTS devices are very effective and capable of increasing the power transfer capability of a line, if the thermal limit permits, while maintaining the same degree of [-8]. This paper investigates the effects of considering the actual line model on the power transfer capability and when a shunt FACTS device is connected to the line. Today's power systems are widely interconnected to take advantage of diversity of loads, availability of resources and fuel prices, in order to supply electricity to the loads at minimum cost with a required reliability. FACTS devices control the interrelated parameters that govern the operation of a transmission system, thus enabling the line to carry power close to its thermal rating []. 4 It has been observed that shunt FACTS devices give maximum benefit from their stabilized voltage support when sited at the mid-point of the transmission line [7]. The proof of maximum increase in power transfer capability is based on a simplified model of the line that neglects the resistance and capacitance, which is a reasonable assumption for short transmission lines. However, for long transmission lines, when the accurate model of the line is considered, the results may deviate significantly from those found for the simplified model especially with respect to transient swing improvement [8], [9]. It has been observed that the first swing of the system is greatly influenced by the choice of different models of the transmission line []. This paper gives the comparison of various results found for the different conditions of a FACTS (UPFC) device in a

2 International Journal of Scientific & Engineering Research, Volume, Issue, March-4 7 ISSN 9-8 long transmission line, considering the actual (accurate) model of the line for a swing and voltage study. It is shown that for the exact line model with a predefined direction of real power flow, a FACTS device needs to be located slightly off-centre towards the sending end. It is also noticed that the optimal location of a shunt FACTS device for swing and voltage improvement depends on the line loading and the initial operating conditions. In this work, the phasor models of UPFC are used to investigate the mid-point locations in a two-area system. The computer simulations under a severe disturbance condition (namely, a three-phase fault) for short duration. Comparison of these results shows the effectiveness of midpoint location of FACTS devices in improving swing and voltage with the power transfer capability. Small distuebance angle Rotor angle Transient Power system Frrequency Large distuebance voltage Voltage Small distuebance voltage Power systems are becoming more complex because of the i ncrease inter-connection for economic operation, better reliability and strategic coverage against catastrophic outages. The transmission networks are now under more stress than ever before to avoid the capital cost involved in reinforcement and environmental objections. Definition: A power system is said to be first-swing stable if the post-halt angle, in Thecentre of inertia (COI) reference frame, of all severely di sturbed machines (SDM) initially increases (or decreases) until a peak value is reached where the angle starts returning to the stable equilibrium point []. The first swing of a machine can also be checked by observing the variation of machine speed and accelerati ng power Pa in the post-fault period. A stable machine reaches the peak angle (or zero speed) in the post-fault. POWER SYSTEM STABILITY AND period while it s accelerating power, and hence TRANSFER CAPABILITY acceleration, is still negative: ω = () A. Definition of of a System P a < () The of a system is defined as the tendency and The critical situation of a machine is characterized by the si ability of the power system to develop restoring forces multaneousoccurrence of zero speed and accelerating equal to or greater than the disturbing forces to maintain power in the post-fault period: the state of equilibrium []. Let a system be in some ω = () equilibrium state. If upon an occurrence of a disturbance P a = (4) and the system is still able to achieve the equilibrium position, it is considered to be stable []. Thus determination of the degree of / in of a machine requires the machine speeds and accelerating B. Need for power system and classification powers in the post-fault period [-]. The power system industry is a field where there are constant changes. Power industries are restructured to cater D. First Swing Stability to more users at lower prices and better power efficiency. Faults (short circuits) in the power system cause very fast c Load demand also increases linearly with the increase in hanges in the electrical conditions. The changed electrical users. Since phenomena limits the transfer state influences electrical power output from generators, capability of the system, there is a need to ensure changes in power flows and in load demand. The Rotor and reliability of the power system due to economic Angle swings are shown in Figure. reasons. Different types of power system have been classified into rotor angle, frequency and Unstable voltage []. Figure shows the classification of power system []. Stable Rotor Angle (deg) Short Term Short Term Long Term Short Term Fig. Classification of power system Long Term Fig. Rotor Angle swings C. First swing stable 4

3 International Journal of Scientific & Engineering Research, Volume, Issue, March-4 76 ISSN 9-8 Generators will receive almost the same mechanical input through the shaft during the fault as before the fault. Therefore, when the fault is cleared (after roughly. s) the power system has to be restored to sufficiently small angle deviations between the generator rotors again. After the first swing we require damping of the oscillations [,4]. E. Rotor Angle Stability (Electromechanical Oscillations) All sudden changes in a power system are associated with a number of phenomena with different timeframes involved. The power flows in the grid changes accordingly. In the second phase the unbalance between mechanical input and electrical output of each generator are causing a change of generator mechanical speed. The individual rate of change in speed is decided by the power deviation and the rotor inertia. When generators are changing speed with different rates will the rotor angles of each generator start to deviate from the pre-disturbance value [7, 8]. They operate with different speeds depending on what they control. The voltage regulators tries to restore voltage and turbine governors adjust mechanical input to generators so we return to balance between consumption and production again. These transitions are oscillatory in its nature and very lightly damped [-]. F. Transmission transfer capability concepts The key basic concepts of transmission transfer capability are described below. Numerous other terms related to transfer capability are explored in detail in NERC s May 99 Transmission Transfer Capability reference document. The concepts and terms in that document are still applicable in an open transmission environment [6]. G. Transfer capability Transfer capability is the measure of the ability of interconnected electric systems to reliably move or transfer power from one area to another over all transmission lines (or paths) between those areas under specified system conditions. The units of transfer capability are in terms of electric power, generally expressed in megawatts (MW). In this context, area may be an individual electric system, power pool, control area, sub-region, or NERC Region, or a portion of any of these. Transfer capability is also directional in nature [6, 7].. FACTS DEVICES IN POWER SYSTEMS FACTS controllers may be based on thyristor devices with no gate turn-off or power devices with gate turn-off capability. FACTS controllers are used for the dynamic control of voltage, impedance and phase angle of high voltage AC transmission lines. The basic principles of the following FACTS controllers, which are used in the twoarea power system under study, are discussed briefly [-4, 8]. A. Unified power Flow controller (UPFC) 4 The Unified Power Flow Controller (UPFC) is the most versatile member of the Flexible AC Transmission Systems (FACTS) family using power electronics to control power flow on power grids []. The UPFC uses a combination of a shunt controller (STATCOM) and a series controller (SSSC) interconnected through a common DC bus as shown on the figure below. v I ISH Vdc VSC VSC d I v - Vs + v vs φ v v PQ X Transmission line Fig. Single-line Diagram of a UPFC and Phasor Diagram of Voltages and Currents P = V V sin δ () X Q = V (V V cos δ) (6) X This FACTS topology provides much more flexibility than the SSSC for controlling the line active and reactive power because active power can now be transferred from the shunt converter to the series converter, through the DC bus. Contrary to the SSSC where the injected voltage Vs is constrained to stay in quadrature with line current I, the injected voltage Vs can now have any angle with respect to line current. If the magnitude of injected voltage Vs is kept constant and if its phase angle ϕ with respect t o V is varied from to 6 degrees, the locus described by the end of vector V (V=V+Vs) is a circle as shown on the phasor diagram. As ϕ is varying, the phase shift δ between voltages V and V at the two line ends also varies. It follows that both the active power P and the reactive power Q transmitted at one line end can be controlled [, 7]. The UPFC (Phasor Type) block models an IGBT-based UPFC. However, as details of the inverter and harmonics are not represented, it can be also used to model a GTObased UPFC in transient studies [, 7]. 4. LOCATION OF SHUNT FACTS DEVICES IN TWO-AREA POWER SYSTEM Previous works on the topic prove that shunt FACTS devices give maximum benefit from their stabilized voltage support when sited at the mid-point of the transmission line. The proof of maximum increase in and power transfer capability is based on the simplified model of the line neglecting line resistance and capacitance. Based on the v

4 International Journal of Scientific & Engineering Research, Volume, Issue, March-4 77 ISSN 9-8 simplified line model it has been proved that the centre or midpoint of a transmission line is the optimal location for combined shunt-series FACTS devices. When the actual model of the line is considered, it is found that the FACTS device needs to be placed slightly off-centre to get the highest possible benefit []. The mid-point sitting is most effective in reactive power control. The transmission line must be operating below the thermal limit and the transient limit. Tan, Y.L suggested a novel method for the analysis of the effectiveness of an SVC and a STATCOM of the same KVar rating for first-swing enhancement.the analysis shows that the STATCOM is superior to the SVC for firstswing enhancement []. Siddhartha Panda, Ramnarayan N. Patel [] investigated about the Shunt Flexible AC Transmission System (FACTS) devices, when placed at the mid -point of a long transmission line, play an important role in controlling the reactive power flow to the power network and hence both the system voltage fluctuations and transient. This paper deals also with the location of a shunt FACTS device to improve transient in a long transmission line with predefined direction of real power flow. It has been observed that the FACTS devices, when placed slightly offcentre towards sending-end, give better performance in improving transient and the location.. TWO-AREA TEST SYSTEM A. Introduction The test system described in this section illustrates modeling of a simple transmission system containing two power plants as shown in fig 4. The FACT device (UPFC) and power system stabilizers (PSS) are used to improve voltages, power transfer and power oscillation damping of the system. The power system illustrated in this work is two area four machines system. However, the phasor simulation method allows simulating more complex power grids. Fig.4 The single line diagram of -area, 4-machine test system,,. VI. SIMULATION AND RESULTS A. System analysis with-out UPFC The simulation results for test system with-out UPFC are given below. The data for different parameters are given in table Swings with-out UPFC d theta - d theta Swings with-out UPFC Swings d theta Fig. Waveforms for rotor angle difference with-out UPFC d_theta-, d_theta-, d_theta-4. 4

5 International Journal of Scientific & Engineering Research, Volume, Issue, March-4 78 ISSN 9-8 Voltage (volts) 4 x... Voltage profile at buses with-out UPFC B B B d theta Swings with UPFC - -. Reactive power (V ar) Time(sec) x 9 Active power profile at buses with-out UPFC B B B d theta Swings with UPFC x 9 4. B B B Fig.6 Profiles at buses with-out UPFC Device, Voltage, Active Power, Reactive Power. Active Power (W) Reactive Power profile at buses with-out UPFC Table- Active, Reactive power & voltages with-out UPFC Bus P (MW) Q (Mvar) S (MVA) V (k volts) B B B B. System analysis with UPFC Here observe the impact of the UPFC for stabilizing the network during a severe contingency. The data for different parameters are given in table. d theta -4 Fig.7 Waveforms for rotor angle difference with UPFC d_theta-, d_theta-, d_theta-4. Voltage (volts) Active power (W) Swings with UPFC x Voltage profile at buses with UPFC x Active power profile at buses with UPFC B B B B B B 4

6 International Journal of Scientific & Engineering Research, Volume, Issue, March-4 79 ISSN 9-8 Reactive power (Var). x Reactive power profile at buses with UPFC B B B Voltage (kv) 6 x 4 Voltage profile at bus-8 With FACTS With-out FACTS Fig. 8 Profiles at buses with UPFC, Voltage, Active Power, Reactive Power. C. Comparison of FACTS Here describe the comparison of UPFC devices are including with UPFC and with-out UPFC performances for the same test system. The simulation results for comparison of UPFC are given below. The data for different parameters are given in table Active Power (W) x x 9 Active Power profile at bus-8 Reactive Power profile at bus-8 d theta Reactive power (Var) Fig. Comparison of profiles at buses, Voltage, Active Power, Reactive Power. d theta - d theta Fig. 9 Waveforms for comparison of rotor angle difference d_theta-, d_theta-, d_theta-4. The simulation study has been divided into various sections for the sake of clarity. At first the optimal location of shunt FACTS devices was determined for a given operating condition, which is mid-point location or low voltage bus. Unlike previous works in this area, we have considered the actual line model, which affects the optimal location for a long line. The next section discusses how the UPFC effect the performances with the four generators while keeping the line flow for test system. Finally, the effect of different line flows, swings and voltage for test system is studied, while keeping the generator loadings in for test system constant and dynamically changes. Table- Active, Reactive power & Voltages with UPFC 4

7 International Journal of Scientific & Engineering Research, Volume, Issue, March-4 8 ISSN 9-8 Table- Active, Reactive power & voltages comparison at bus 8 (B-8) System Data comparison at bus 8 UPFC Data () Device Q (Mvar) V (k volts) S (MVA) V (pu) Q (pu) No UPFC With UPFC No UPFC.66 No UPFC V(kV) With UPFC V(kV) Fig. Comparison of voltage at bus-8, Comparison of total power flow at bus-8 6. CONCLUSION This work deals with applications of the UPFC. The models are applicable for swing, voltage analysis, and cover broader range of power transfer capability. The effects of UPFC installed in power transmission path are analyzed in this work, and the conclusions are as follow: () The UPFC can improve swing and voltage limit observably, and UPFC give better performance for power transfer capability for test system transmission capacity increased.66 MVA (no UPFC) and. MVA (with UPFC), it s already discussed in section 6, table no. and. () The power losses in system with-out FACT is more as compared when used FACTS devices. The loading capacity with UPFC is increased, the reactive power compensated form.4 MVAR (no UPFC) to 7.4 MVAR (with UPFC), 4 and voltage injected from 78. (no UPFC) to. kv (with UPFC) at bus-8 for test system, its already discussed in section 6, table no. and B B B () Similarly the performance enhancement of test system can be analyses for compensate reactive power, voltage injected and increased power transfer capability, it s already discussed in section 6. (4) As has been discussed above ()-(4) it has been observed system performance improved by introducing the UPFC, which compensate reactive power (MVAR), voltage injected (kv) and increased power transfer capability (MVA). It s concluded that by introducing UPFC device system performance, voltage and transmission capability improves considerably. 7.7 S (MVA) S (MVA) Bus P (MW ) Q (Mva r) S (MVA) V (k volts) UPFC Data V( Q(p pu) u) References [] P. Kundur, Power System Stability and Control, McGraw-Hill, 994. [] N. G. Hingorani, L. Gyugyi, "Understanding FACTS; Concepts and Technology of Flexible AC Transmission Systems," IEEE Press book,. [] S. Panda and R. N. Patel, 'Transient Stability Improvement by Optimally Located STATCOMs Employing Genetic Algorithm', Intl J. Energy Technology and Policy, (4) (7), [4] R. Patel and K. V. Pagalthivarthi, 'MATLAB-Based modelling of power system components in transient analysis', Intl J. Modelling and Simulation, () (), 4-. [] P. Kundur, J. Paserba, V. Ajjarapu, G. Andersson, A. Bose, C. Canizares, N. Hatziargyriou, D. Hill, A. Stankovic, C. Taylor, T. V. Cutsem and V. Vittal, 'Definition and classification of power system ', IEEE Trans. Power Systems, 9() (4), [6] L. Gyugyi, 'Power electronics in electric utilities: static VAr compensators', IEEE Proc., 76 (988), [7] L. Gyugyi, 'Dynamic compensation of a.c. transmission lines by solid-state synchronous voltage sources', IEEE Trans. Power Delivery, 9() (994), [8] B. T. Ooi, M. Kazerani, R. Marceau, Z. Wolanski, F. D. Galiana, D. Mcgills and G. Joos, 'Mid-point siting of FACTS devices in transmission lines', IEEE Trans. Power Delivery, l (997), 77-7.

8 International Journal of Scientific & Engineering Research, Volume, Issue, March-4 8 ISSN 9-8 [9] M. H. Haque, 'Optimal location of shunt FACTS devices in long transmission lines', IEE Proc. Power Gen. Trans. Distrib., 47 (), 8-. [] S. Panda and R. N. Patel, 'Optimal location of shunt FACTS controllers for transient improvement employing genetic algorithms', Electric Power Components and Systems, () (7), 89-. [] K.R.Padiyar FACTS Controllers in power transmission and distribution,new Age International Publishers, 7. [] Y.H. Song and A.T. Johns, Flexible ac transmission systems (FACTS), The Institute of Electrical Engineers, London, 999. [] M. H. Haque, Evaluation of First Swing Stability of a Large Power System With Various FACTS Devices IEEE TRANSACTIONS ON POWER SYSTEMS, VOL., NO., AUGUST 8, pp [4] Anuradha S. Deshpande, Kadam Paresh A., Rana Vikas M. First Swing Stability of The Power System Using Facts Device National Conference on Recent Trends in Engineering & Technology, -4 May, pp.-. [] M.H. Haque, Damping improvement using facts devices. Electrical Power Syst. Res. Volume 76, Issues 9-, June 6. [6] North American Electric Reliability Council (NERC) report Available Transfer Capability Definitions and Determination June 996. [7] http// etc. [8] M. H. Haque, 'Effects of exact line model and shunt FACTS devices on first swing limit', Intl J. Power Energy System, (), -7. 4

Transfer Capability Enhancement of Transmission Line using Static Synchronous Compensator (STATCOM)

Transfer Capability Enhancement of Transmission Line using Static Synchronous Compensator (STATCOM) International Journal of Advanced Computer Research (ISSN (print): 49777 ISSN (online): 77797) Volume Number4 Issue7 December Transfer Capability Enhancement of Transmission Line using Static Synchronous

More information

Arvind Pahade and Nitin Saxena Department of Electrical Engineering, Jabalpur Engineering College, Jabalpur, (MP), India

Arvind Pahade and Nitin Saxena Department of Electrical Engineering, Jabalpur Engineering College, Jabalpur, (MP), India e t International Journal on Emerging Technologies 4(1): 10-16(2013) ISSN No. (Print) : 0975-8364 ISSN No. (Online) : 2249-3255 Control of Synchronous Generator Excitation and Rotor Angle Stability by

More information

Comparison of FACTS Devices for Power System Stability Enhancement

Comparison of FACTS Devices for Power System Stability Enhancement Comparison of FACTS Devices for Power System Stability Enhancement D. Murali Research Scholar in EEE Dept., Government College of Engineering, Bargur-635 104, Tamilnadu, India. Dr. M. Rajaram Professor

More information

Transient stability improvement by using shunt FACT device (STATCOM) with Reference Voltage Compensation (RVC) control scheme

Transient stability improvement by using shunt FACT device (STATCOM) with Reference Voltage Compensation (RVC) control scheme I J E E E C International Journal of Electrical, Electronics ISSN No. (Online) : 2277-2626 and Computer Engineering 2(1): 7-12(2013) Transient stability improvement by using shunt FACT device (STATCOM)

More information

Voltage Control and Power System Stability Enhancement using UPFC

Voltage Control and Power System Stability Enhancement using UPFC International Conference on Renewable Energies and Power Quality (ICREPQ 14) Cordoba (Spain), 8 th to 10 th April, 2014 Renewable Energy and Power Quality Journal (RE&PQJ) ISSN 2172-038 X, No.12, April

More information

Modelling and Analysis of Single Machine Infinite Bus System with and without UPFC for Different Locations of Unsymmetrical Fault

Modelling and Analysis of Single Machine Infinite Bus System with and without UPFC for Different Locations of Unsymmetrical Fault Modelling and Analysis of Single Machine Infinite Bus System with and without UPFC for Different Locations of Unsymmetrical Fault Saurabh S. Shingare Department of Electrical Engineering, University of

More information

Damping Power system Oscillation using Static Synchronous Series Compensator (SSSC)

Damping Power system Oscillation using Static Synchronous Series Compensator (SSSC) Damping Power system Oscillation using Static Synchronous Series Compensator (SSSC) Girish Kumar Prasad 1, Dr. Malaya S Dash 2 1M-Tech Scholar, Dept. of Electrical & Electronics Engineering, Technocrats

More information

SIMULATION OF D-Q CONTROL SYSTEM FOR A UNIFIED POWER FLOW CONTROLLER

SIMULATION OF D-Q CONTROL SYSTEM FOR A UNIFIED POWER FLOW CONTROLLER SIMULATION OF D-Q CONTROL SYSTEM FOR A UNIFIED POWER FLOW CONTROLLER S. Tara Kalyani 1 and G. Tulasiram Das 1 1 Department of Electrical Engineering, Jawaharlal Nehru Technological University, Hyderabad,

More information

Power Quality enhancement of a distribution line with DSTATCOM

Power Quality enhancement of a distribution line with DSTATCOM ower Quality enhancement of a distribution line with DSTATCOM Divya arashar 1 Department of Electrical Engineering BSACET Mathura INDIA Aseem Chandel 2 SMIEEE,Deepak arashar 3 Department of Electrical

More information

Transient Stability Improvement Of IEEE 9 Bus System With Shunt FACTS Device STATCOM

Transient Stability Improvement Of IEEE 9 Bus System With Shunt FACTS Device STATCOM Transient Stability Improvement Of IEEE 9 Bus System With Shunt FACTS Device STATCOM P.P. Panchbhai 1, P.S.Vaidya 2 1Pratiksha P Panchbhai, Dept. of Electrical Engineering, G H Raisoni College of Engineering

More information

Static Synchronous Compensator (STATCOM) for the improvement of the Electrical System performance with Non Linear load 1

Static Synchronous Compensator (STATCOM) for the improvement of the Electrical System performance with Non Linear load 1 Static Synchronous Compensator (STATCOM) for the improvement of the Electrical System performance with Non Linear load MADHYAMA V. WANKHEDE Department Of Electrical Engineering G. H. Raisoni College of

More information

ELEMENTS OF FACTS CONTROLLERS

ELEMENTS OF FACTS CONTROLLERS 1 ELEMENTS OF FACTS CONTROLLERS Rajiv K. Varma Associate Professor Hydro One Chair in Power Systems Engineering University of Western Ontario London, ON, CANADA rkvarma@uwo.ca POWER SYSTEMS - Where are

More information

Improving the Transient and Dynamic stability of the Network by Unified Power Flow Controller (UPFC)

Improving the Transient and Dynamic stability of the Network by Unified Power Flow Controller (UPFC) International Journal of Scientific and Research Publications, Volume 2, Issue 5, May 2012 1 Improving the Transient and Dynamic stability of the Network by Unified Power Flow Controller (UPFC) K. Manoz

More information

Power System Stability Improvement in Multi-machine 14 Bus System Using STATCOM

Power System Stability Improvement in Multi-machine 14 Bus System Using STATCOM IOSR Journal of Electrical and Electronics Engineering (IOSR-JEEE) e-issn: 2278-676,p-ISSN: 232-333, Volume, Issue 3 Ver. II (May Jun. 25), PP 43-47 www.iosrjournals.org Power System Stability Improvement

More information

FACTS devices in Distributed Generation

FACTS devices in Distributed Generation FACTS devices in Distributed Generation 1 K. B. MOHD. UMAR ANSARI, 2 SATYENDRA VISHWAKARMA, 3 GOLDY SHARMA 1, 2, 3 M.Tech (Electrical Power & Energy Systems), Department of Electrical & Electronics Engineering,

More information

International Journal of Advance Engineering and Research Development

International Journal of Advance Engineering and Research Development Scientific Journal of Impact Factor (SJIF): 4.72 International Journal of Advance Engineering and Research Development Volume 4, Issue 4, April -2017 e-issn (O): 2348-4470 p-issn (P): 2348-6406 Damping

More information

Power System Oscillations Damping and Transient Stability Enhancement with Application of SSSC FACTS Devices

Power System Oscillations Damping and Transient Stability Enhancement with Application of SSSC FACTS Devices Available online www.ejaet.com European Journal of Advances in Engineering and Technology, 2015, 2(11): 73-79 Research Article ISSN: 2394-658X Power System Oscillations Damping and Transient Stability

More information

Increasing Dynamic Stability of the Network Using Unified Power Flow Controller (UPFC)

Increasing Dynamic Stability of the Network Using Unified Power Flow Controller (UPFC) Increasing Dynamic Stability of the Network Using Unified Power Flow Controller (UPFC) K. Manoz Kumar Reddy (Associate professor, Electrical and Electronics Department, Sriaditya Engineering College, India)

More information

INTERNATIONAL JOURNAL OF ELECTRICAL ENGINEERING & TECHNOLOGY (IJEET)

INTERNATIONAL JOURNAL OF ELECTRICAL ENGINEERING & TECHNOLOGY (IJEET) INTERNATIONAL JOURNAL OF ELECTRICAL ENGINEERING & TECHNOLOGY (IJEET) ISSN 0976 6545(Print) ISSN 0976 6553(Online) Volume 3, Issue 1, January- June (2012), pp. 226-234 IAEME: www.iaeme.com/ijeet.html Journal

More information

VSC Based HVDC Active Power Controller to Damp out Resonance Oscillation in Turbine Generator System

VSC Based HVDC Active Power Controller to Damp out Resonance Oscillation in Turbine Generator System VSC Based HVDC Active Power Controller to Damp out Resonance Oscillation in Turbine Generator System Rajkumar Pal 1, Rajesh Kumar 2, Abhay Katyayan 3 1, 2, 3 Assistant Professor, Department of Electrical

More information

Transient Stability Improvement of Multi Machine Power Systems using Matrix Converter Based UPFC with ANN

Transient Stability Improvement of Multi Machine Power Systems using Matrix Converter Based UPFC with ANN IJSRD - International Journal for Scientific Research & Development Vol. 3, Issue 04, 2015 ISSN (online): 2321-0613 Transient Stability Improvement of Multi Machine Power Systems using Matrix Converter

More information

Designing Of Distributed Power-Flow Controller

Designing Of Distributed Power-Flow Controller IOSR Journal of Electrical and Electronics Engineering (IOSR-JEEE) ISSN: 2278-1676 Volume 2, Issue 5 (Sep-Oct. 2012), PP 01-09 Designing Of Distributed Power-Flow Controller 1 R. Lokeswar Reddy (M.Tech),

More information

factors that can be affecting the performance of a electrical power transmission system. Main problems which cause instability to a power system is vo

factors that can be affecting the performance of a electrical power transmission system. Main problems which cause instability to a power system is vo 2011 International Conference on Signal, Image Processing and Applications With workshop of ICEEA 2011 IPCSIT vol.21 (2011) (2011) IACSIT Press, Singapore Location of FACTS devices for Real and Reactive

More information

Optimal Placement of Shunt Connected Facts Device in a Series Compensated Long Transmission Line

Optimal Placement of Shunt Connected Facts Device in a Series Compensated Long Transmission Line Journal of Agriculture and Life Sciences Vol. 1, No. 1; June 2014 Optimal Placement of Shunt Connected Facts Device in a Series Compensated Long Transmission Line Sudhakar. Muthyala EEE Dept. University

More information

Bhavin Gondaliya 1st Head, Electrical Engineering Department Dr. Subhash Technical Campus, Junagadh, Gujarat (India)

Bhavin Gondaliya 1st Head, Electrical Engineering Department Dr. Subhash Technical Campus, Junagadh, Gujarat (India) ISSN: 2349-7637 (Online) RESEARCH HUB International Multidisciplinary Research Journal (RHIMRJ) Research Paper Available online at: www.rhimrj.com Modeling and Simulation of Distribution STATCOM Bhavin

More information

Stability Enhancement for Transmission Lines using Static Synchronous Series Compensator

Stability Enhancement for Transmission Lines using Static Synchronous Series Compensator Stability Enhancement for Transmission Lines using Static Synchronous Series Compensator Ishwar Lal Yadav Department of Electrical Engineering Rungta College of Engineering and Technology Bhilai, India

More information

PERFORMANCE COMPARISON OF POWER SYSTEM STABILIZER WITH AND WITHOUT FACTS DEVICE

PERFORMANCE COMPARISON OF POWER SYSTEM STABILIZER WITH AND WITHOUT FACTS DEVICE PERFORMANCE COMPARISON OF POWER SYSTEM STABILIZER WITH AND WITHOUT FACTS DEVICE Amit Kumar Vidyarthi 1, Subrahmanyam Tanala 2, Ashish Dhar Diwan 1 1 M.Tech Scholar, 2 Asst. Prof. Dept. of Electrical Engg.,

More information

Interline Power Flow Controller: Review Paper

Interline Power Flow Controller: Review Paper Vol. (0) No. 3, pp. 550-554 ISSN 078-365 Interline Power Flow Controller: Review Paper Akhilesh A. Nimje, Chinmoy Kumar Panigrahi, Ajaya Kumar Mohanty Abstract The Interline Power Flow Controller (IPFC)

More information

LARGE-SCALE WIND POWER INTEGRATION, VOLTAGE STABILITY LIMITS AND MODAL ANALYSIS

LARGE-SCALE WIND POWER INTEGRATION, VOLTAGE STABILITY LIMITS AND MODAL ANALYSIS LARGE-SCALE WIND POWER INTEGRATION, VOLTAGE STABILITY LIMITS AND MODAL ANALYSIS Giuseppe Di Marzio NTNU giuseppe.di.marzio@elkraft.ntnu.no Olav B. Fosso NTNU olav.fosso@elkraft.ntnu.no Kjetil Uhlen SINTEF

More information

STATCOM WITH POD CONTROLLER FOR REACTIVE POWER COMPENSATION Vijai Jairaj 1, Vishnu.J 2 and Sreenath.N.R 3

STATCOM WITH POD CONTROLLER FOR REACTIVE POWER COMPENSATION Vijai Jairaj 1, Vishnu.J 2 and Sreenath.N.R 3 STATCOM WITH POD CONTROLLER FOR REACTIVE POWER COMPENSATION Vijai Jairaj 1, Vishnu.J 2 and Sreenath.N.R 3 1 PG Student [Electrical Machines], Department of EEE, Sree Buddha College of Engineering Pattoor,

More information

Power System Stability Enhancement Using Static Synchronous Series Compensator (SSSC)

Power System Stability Enhancement Using Static Synchronous Series Compensator (SSSC) Vol. 3, Issue. 4, Jul - Aug. 2013 pp-2530-2536 ISSN: 2249-6645 Power System Stability Enhancement Using Static Synchronous Series Compensator (SSSC) B. M. Naveen Kumar Reddy 1, Mr. G. V. Rajashekar 2,

More information

Transient Stability Improvement of SMIB With Unified Power Flow Controller

Transient Stability Improvement of SMIB With Unified Power Flow Controller Transient Stability Improvement of SMIB With Unified Power Flow Controller Er. Ved Parkash Er. Charan Preet Singh Gill Dr. Ratna Dahiya Lecturer Lecturer Assistant Professor J.C.D.M.C.E-Sirsa G.N.D.E.C-Ludhiana

More information

ENHANCEMENT OF POWER FLOW USING SSSC CONTROLLER

ENHANCEMENT OF POWER FLOW USING SSSC CONTROLLER ENHANCEMENT OF POWER FLOW USING SSSC CONTROLLER 1 PRATIK RAO, 2 OMKAR PAWAR, 3 C. L. BHATTAR, 4 RUSHIKESH KHAMBE, 5 PRITHVIRAJ PATIL, 6 KEDAR KULKARNI 1,2,4,5,6 B. Tech Electrical, 3 M. Tech Electrical

More information

Analysis of Effect on Transient Stability of Interconnected Power System by Introduction of HVDC Link.

Analysis of Effect on Transient Stability of Interconnected Power System by Introduction of HVDC Link. Analysis of Effect on Transient Stability of Interconnected Power System by Introduction of HVDC Link. Mr.S.B.Dandawate*, Mrs.S.L.Shaikh** *,**(Department of Electrical Engineering, Walchand College of

More information

Improvement of Rotor Angle Stability and Dynamic Performance of AC/DC Interconnected Transmission System

Improvement of Rotor Angle Stability and Dynamic Performance of AC/DC Interconnected Transmission System Improvement of Rotor Angle Stability and Dynamic Performance of AC/DC Interconnected Transmission System 1 Ramesh Gantha 1, Rasool Ahemmed 2 1 eee Kl University, India 2 AsstProfessor, EEE KL University,

More information

Real and Reactive Power Control by using 48-pulse Series Connected Three-level NPC Converter for UPFC

Real and Reactive Power Control by using 48-pulse Series Connected Three-level NPC Converter for UPFC Real and Reactive Power Control by using 48-pulse Series Connected Three-level NPC Converter for UPFC A.Naveena, M.Venkateswara Rao 2 Department of EEE, GMRIT, Rajam Email id: allumalla.naveena@ gmail.com,

More information

Application of Fuzzy Logic Controller in UPFC to Mitigate THD in Power System

Application of Fuzzy Logic Controller in UPFC to Mitigate THD in Power System International Journal of Engineering Research and Development e-issn: 2278-067X, p-issn: 2278-800X, www.ijerd.com Volume 9, Issue 8 (January 2014), PP. 25-33 Application of Fuzzy Logic Controller in UPFC

More information

Chapter 10: Compensation of Power Transmission Systems

Chapter 10: Compensation of Power Transmission Systems Chapter 10: Compensation of Power Transmission Systems Introduction The two major problems that the modern power systems are facing are voltage and angle stabilities. There are various approaches to overcome

More information

Placement of Multiple Svc on Nigerian Grid System for Steady State Operational Enhancement

Placement of Multiple Svc on Nigerian Grid System for Steady State Operational Enhancement American Journal of Engineering Research (AJER) e-issn: 20-0847 p-issn : 20-0936 Volume-6, Issue-1, pp-78-85 www.ajer.org Research Paper Open Access Placement of Multiple Svc on Nigerian Grid System for

More information

PUBLICATIONS OF PROBLEMS & APPLICATION IN ENGINEERING RESEARCH - PAPER CSEA2012 ISSN: ; e-issn:

PUBLICATIONS OF PROBLEMS & APPLICATION IN ENGINEERING RESEARCH - PAPER  CSEA2012 ISSN: ; e-issn: POWER FLOW CONTROL BY USING OPTIMAL LOCATION OF STATCOM S.B. ARUNA Assistant Professor, Dept. of EEE, Sree Vidyanikethan Engineering College, Tirupati aruna_ee@hotmail.com 305 ABSTRACT In present scenario,

More information

Transient Stability Enhancement with Application of FACTS Devices

Transient Stability Enhancement with Application of FACTS Devices Transient Stability Enhancement with Application of FACTS Devices Joel.R. Sutter, Jomo Kenyatta University of Agriculture and Technology, P.O Box 62000-00200, Nairobi, Kenya E-mail: joelruttosutter@gmail.com

More information

The Influence of Thyristor Controlled Phase Shifting Transformer on Balance Fault Analysis

The Influence of Thyristor Controlled Phase Shifting Transformer on Balance Fault Analysis Vol.2, Issue.4, July-Aug. 2012 pp-2472-2476 ISSN: 2249-6645 The Influence of Thyristor Controlled Phase Shifting Transformer on Balance Fault Analysis Pratik Biswas (Department of Electrical Engineering,

More information

ImprovementofPowerSystemStabilitybyusingUPFCwithCascadeProportionalIntegralDifferentialController

ImprovementofPowerSystemStabilitybyusingUPFCwithCascadeProportionalIntegralDifferentialController Global Journal of Researches in Engineering: F Electrical and Electronics Engineering Volume 14 Issue 2 Version 1.0 Type: Double Blind Peer Reviewed International Research Journal Publisher: Global Journals

More information

[Kumar*, 4.(7): July, 2015] ISSN: (I2OR), Publication Impact Factor: 3.785

[Kumar*, 4.(7): July, 2015] ISSN: (I2OR), Publication Impact Factor: 3.785 IJEST INTENATIONAL JOUNAL OF ENGINEEING SCIENCES & ESEACH TECHNOLOGY MODELLING, SIMULATION AND COMPAISON ANALYSIS OF VAIOUS FACTS DEVICES FO POWE STABILITY Susial Kumar*, Neha Gupta * M.Tech Department

More information

Performance Improvement of Power System Using Static Synchronous Compensator (STATCOM) Priya Naikwad, Mayuri Kalmegh, Poonam Bhonge

Performance Improvement of Power System Using Static Synchronous Compensator (STATCOM) Priya Naikwad, Mayuri Kalmegh, Poonam Bhonge 2017 IJSRST Volume 3 Issue 2 Print ISSN: 235-6011 Online ISSN: 235-602X National Conference on Advances in Engineering and Applied Science (NCAEAS) 16 th February 2017 In association with International

More information

Analysis the Modeling and Control of Integrated STATCOM System to Improve Power System

Analysis the Modeling and Control of Integrated STATCOM System to Improve Power System Analysis the Modeling and Control of Integrated STATCOM System to Improve Power System Paramjit Singh 1, Rajesh Choudhary 2 1 M.Tech, Dept, Elect, Engg, EMax group of institute, Badauli (H.R.) 2 Astt.Prof.,

More information

A Review on Mid-point Compensation of a Two-machine System Using STATCOM

A Review on Mid-point Compensation of a Two-machine System Using STATCOM Volume-4, Issue-2, April-2014, ISSN No.: 2250-0758 International Journal of Engineering and Management Research Available at: www.ijemr.net Page Number: 109-115 A Review on Mid-point Compensation of a

More information

IJESR/Nov 2012/ Volume-2/Issue-11/Article No-21/ ISSN International Journal of Engineering & Science Research

IJESR/Nov 2012/ Volume-2/Issue-11/Article No-21/ ISSN International Journal of Engineering & Science Research International Journal of Engineering & Science Research POWER QUALITY IMPROVEMENT BY USING DSTATCOM DURING FAULT AND NONLINEAR CONDITIONS T. Srinivas* 1, V.Ramakrishna 2, Eedara Aswani Kumar 3 1 M-Tech

More information

STUDY AND SIMULATION OF THE UNIFIED POWER FLOW CONTROLLER (UPFC) IN POWER SYSTEM

STUDY AND SIMULATION OF THE UNIFIED POWER FLOW CONTROLLER (UPFC) IN POWER SYSTEM IETJOURAL ofegieerig &TECHOLOGY Winter 2011 STUDY AD SIMULATIO OF THE UIFIED POWER FLOW COTROLLER (UPFC) I POWER SYSTEM Ragini Malviya' co co L{) I (J) Z (j) (j) The main objectives Abstract of Flexible

More information

Mitigation of Voltage Sag and Swell using Distribution Static Synchronous Compensator (DSTATCOM)

Mitigation of Voltage Sag and Swell using Distribution Static Synchronous Compensator (DSTATCOM) ABHIYANTRIKI Mitigation of Voltage Sag and Swell using Distribution Static Synchronous Compensator (DSTATCOM) An International Journal of Engineering & Technology (A Peer Reviewed & Indexed Journal) Vol.

More information

Enhancement of Voltage Stability & reactive Power Control of Distribution System Using Facts Devices

Enhancement of Voltage Stability & reactive Power Control of Distribution System Using Facts Devices Enhancement of Voltage Stability & reactive Power Control of Distribution System Using Facts Devices Aarti Rai Electrical & Electronics Engineering, Chhattisgarh Swami Vivekananda Technical University,

More information

Analysis of Power System Oscillation Damping & Voltage Stability Improvement Using SSSC in A Multimachine System

Analysis of Power System Oscillation Damping & Voltage Stability Improvement Using SSSC in A Multimachine System nternational Journal of Engineering Research & Technology (JERT) SSN: 2278-8 Vol. 3 ssue 7, July - 24 Analysis of Power System Oscillation Damping & Voltage Stability mprovement Using SSSC in A Multimachine

More information

Power flow improvement using Static Synchronous Series Compensator (SSSC)

Power flow improvement using Static Synchronous Series Compensator (SSSC) Page14 Power flow improvement using Static Synchronous Series Compensator (SSSC) Gandla Saraswathi*, Dr.N.Visali ** & B. Narasimha Reddy*** *P.G Student, Department of Electrical and Electronics Engineering,JNTUACEP,

More information

Power Quality and the Need for Compensation

Power Quality and the Need for Compensation Power Quality and the Need for Compensation Risha Dastagir 1, Prof. Manish Khemariya 2, Prof. Vivek Rai 3 1 Research Scholar, 2,3 Asst. Professor, Lakshmi Narain College of Technology Bhopal, India Abstract

More information

Identification of weak buses using Voltage Stability Indicator and its voltage profile improvement by using DSTATCOM in radial distribution systems

Identification of weak buses using Voltage Stability Indicator and its voltage profile improvement by using DSTATCOM in radial distribution systems IOSR Journal of Electrical And Electronics Engineering (IOSRJEEE) ISSN : 2278-1676 Volume 2, Issue 4 (Sep.-Oct. 2012), PP 17-23 Identification of weak buses using Voltage Stability Indicator and its voltage

More information

Comparison and Performance Analysis of FACTs Controller in System Stability

Comparison and Performance Analysis of FACTs Controller in System Stability Circuits and Systems, 2016, 7, 2948-2958 Published Online August 2016 in SciRes. http://www.scirp.org/journal/cs http://dx.doi.org/10.4236/cs.2016.710253 Comparison and Performance Analysis of FACTs Controller

More information

CHAPTER 4 POWER QUALITY AND VAR COMPENSATION IN DISTRIBUTION SYSTEMS

CHAPTER 4 POWER QUALITY AND VAR COMPENSATION IN DISTRIBUTION SYSTEMS 84 CHAPTER 4 POWER QUALITY AND VAR COMPENSATION IN DISTRIBUTION SYSTEMS 4.1 INTRODUCTION Now a days, the growth of digital economy implies a widespread use of electronic equipment not only in the industrial

More information

Improvement of Power system transient stability using static synchronous series compensator

Improvement of Power system transient stability using static synchronous series compensator Improvement of Power system transient stability using static synchronous series compensator 1 Dharmendrasinh Chauhan, 2 Mr.Ankit Gajjar 1 ME Student, 2 Assistant Professor Electrical Engineering Department,

More information

Modeling and Simulation of STATCOM

Modeling and Simulation of STATCOM Modeling and Simulation of STATCOM Parimal Borse, India Dr. A. G. Thosar Associate Professor, India Samruddhi Shaha, India Abstract:- This paper attempts to model and simulate Flexible Alternating Current

More information

A.V.Sudhakara Reddy 1, M. Ramasekhara Reddy 2, Dr. M. Vijaya Kumar 3

A.V.Sudhakara Reddy 1, M. Ramasekhara Reddy 2, Dr. M. Vijaya Kumar 3 Stability Improvement During Damping of Low Frequency Oscillations with Fuzzy Logic Controller A.V.Sudhakara Reddy 1, M. Ramasekhara Reddy 2, Dr. M. Vijaya Kumar 3 1 (M. Tech, Department of Electrical

More information

Improvement of Voltage Profile using D- STATCOM Simulation under sag and swell condition

Improvement of Voltage Profile using D- STATCOM Simulation under sag and swell condition ISSN (Online) 232 24 ISSN (Print) 232 5526 Vol. 2, Issue 7, July 24 Improvement of Voltage Profile using D- STATCOM Simulation under sag and swell condition Brijesh Parmar, Prof. Shivani Johri 2, Chetan

More information

Mitigating Voltage Sag Using Dynamic Voltage Restorer

Mitigating Voltage Sag Using Dynamic Voltage Restorer Mitigating Voltage Sag Using Dynamic Voltage Restorer Sumit A. Borakhade 1, R.S. Pote 2 1 (M.E Scholar Electrical Engineering, S.S.G.M.C.E. / S.G.B.A.U. Amravati, India) 2 (Associate Professor, Electrical

More information

I. INTRODUCTION IJSRST Volume 3 Issue 2 Print ISSN: Online ISSN: X

I. INTRODUCTION IJSRST Volume 3 Issue 2 Print ISSN: Online ISSN: X 2017 IJSRST Volume 3 Issue 2 Print ISSN: 2395-6011 Online ISSN: 2395-602X National Conference on Advances in Engineering and Applied Science (NCAEAS) 16 th February 2017 In association with International

More information

Performance and Analysis of Reactive Power Compensation by Unified Power Flow Controller

Performance and Analysis of Reactive Power Compensation by Unified Power Flow Controller Indonesian Journal of Electrical Engineering and Informatics (IJEEI) Vol. 3, No. 3, September 2015, pp. 141~149 ISSN: 2089-3272 141 Performance and Analysis of Reactive Power Compensation by Unified Power

More information

Available ONLINE

Available ONLINE Available ONLINE www.ijart.org IJART, Vol. 2 Issue 3, 2012,94-98 ISSN NO: 6602 3127 R E S E A R C H A R T II C L E Enhancement Of Voltage Stability And Power Oscillation Damping Using Static Synchronous

More information

Comparison and Simulation of Open Loop System and Closed Loop System Based UPFC used for Power Quality Improvement

Comparison and Simulation of Open Loop System and Closed Loop System Based UPFC used for Power Quality Improvement International Journal of Soft Computing and Engineering (IJSCE) ISSN: 2231-2307, Volume-1, Issue-6, January 2012 Comparison and Simulation of Open Loop System and Closed Loop System Based UPFC used for

More information

Comparison of Simulation Results of D-Facts & UPFC Used for Power Quality Improvement

Comparison of Simulation Results of D-Facts & UPFC Used for Power Quality Improvement International Journal of Scientific and Research Publications, Volume 3, Issue 9, September 2013 1 Comparison of Simulation Results of D-Facts & UPFC Used for Power Quality Improvement Dr.K.Ravichandrudu

More information

Transient Stability Analysis of Multimachine System Using Statcom

Transient Stability Analysis of Multimachine System Using Statcom IOSR Journal of Engineering (IOSRJEN) e-issn: 2250-3021, p-issn: 2278-8719 Vol. 3, Issue 5(May. 2013), V3 PP 39-45 Transient Stability Analysis of Multimachine System Using Statcom Sujith. S, T.Nandagopal

More information

SIMULATION OF D-STATCOM AND DVR IN POWER SYSTEMS

SIMULATION OF D-STATCOM AND DVR IN POWER SYSTEMS SIMUATION OF D-STATCOM AND DVR IN POWER SYSTEMS S.V Ravi Kumar 1 and S. Siva Nagaraju 1 1 J.N.T.U. College of Engineering, KAKINADA, A.P, India E-mail: ravijntu@gmail.com ABSTRACT A Power quality problem

More information

Voltage Level and Transient Stability Enhancement of a Power System Using STATCOM

Voltage Level and Transient Stability Enhancement of a Power System Using STATCOM Voltage Level and Transient Stability Enhancement of a Power System Using STATCOM Md. Quamruzzaman 1, Assistant professor, Dept of EEE, Chittagong University of Engineering and Technology, Bangladesh..

More information

Volume I Issue VI 2012 September-2012 ISSN

Volume I Issue VI 2012 September-2012 ISSN A 24-pulse STATCOM Simulation model to improve voltage sag due to starting of 1 HP Induction-Motor Mr. Ajay Kumar Bansal 1 Mr. Govind Lal Suthar 2 Mr. Rohan Sharma 3 1 Associate Professor, Department of

More information

Power System Reliability and Transfer Capability Improvement by VSC- HVDC (HVDC Light )

Power System Reliability and Transfer Capability Improvement by VSC- HVDC (HVDC Light ) 21, rue d Artois, F-75008 PARIS SECURITY AND RELIABILITY OF ELECTRIC POWER SYSTEMS http : //www.cigre.org CIGRÉ Regional Meeting June 18-20, 2007, Tallinn, Estonia Power System Reliability and Transfer

More information

ECE 422/522 Power System Operations & Planning/Power Systems Analysis II 5 - Reactive Power and Voltage Control

ECE 422/522 Power System Operations & Planning/Power Systems Analysis II 5 - Reactive Power and Voltage Control ECE 422/522 Power System Operations & Planning/Power Systems Analysis II 5 - Reactive Power and Voltage Control Spring 2014 Instructor: Kai Sun 1 References Saadat s Chapters 12.6 ~12.7 Kundur s Sections

More information

Application of SSSC-Damping Controller for Power System Stability Enhancement

Application of SSSC-Damping Controller for Power System Stability Enhancement Kalpa Publications in Engineering Volume 1, 2017, Pages 123 133 ICRISET2017. International Conference on Research and Innovations in Science, Engineering &Technology. Selected Papers in Engineering Application

More information

I. INTRODUCTION. Keywords:- FACTS, TCSC, TCPAR,UPFC,ORPD

I. INTRODUCTION. Keywords:- FACTS, TCSC, TCPAR,UPFC,ORPD International Journal of Engineering Research and Development e-issn: 2278-067X, p-issn: 2278-800X, www.ijerd.com Volume 11, Issue 11 (November 2015), PP.13-18 Modelling Of Various Facts Devices for Optimal

More information

The Eect of an Interline Power Flow Controller (IPFC) on Damping Inter-area Oscillations in Interconnected Power Systems

The Eect of an Interline Power Flow Controller (IPFC) on Damping Inter-area Oscillations in Interconnected Power Systems Scientia Iranica, Vol. 15, No., pp 11{1 c Sharif University of Technology, April 8 Research Note The Eect of an Interline Power Flow Controller (IPFC) on Damping Inter-area Oscillations in Interconnected

More information

[Mahagaonkar*, 4.(8): August, 2015] ISSN: (I2OR), Publication Impact Factor: 3.785

[Mahagaonkar*, 4.(8): August, 2015] ISSN: (I2OR), Publication Impact Factor: 3.785 IJESRT INTERNATIONAL JOURNAL OF ENGINEERING SCIENCES & RESEARCH TECHNOLOGY POWER QUALITY IMPROVEMENT OF GRID CONNECTED WIND ENERGY SYSTEM BY USING STATCOM Mr.Mukund S. Mahagaonkar*, Prof.D.S.Chavan * M.Tech

More information

Investigation of D-Statcom Operation in Electric Distribution System

Investigation of D-Statcom Operation in Electric Distribution System J. Basic. Appl. Sci. Res., (2)29-297, 2 2, TextRoad Publication ISSN 29-434 Journal of Basic and Applied Scientific Research www.textroad.com Investigation of D-Statcom Operation in Electric Distribution

More information

Brief Study on TSCS, SSSC, SVC Facts Device

Brief Study on TSCS, SSSC, SVC Facts Device Brief Study on TSCS, SSSC, SVC Facts Device Ramesh Kumari, Parveen M.Tech. Student, Department of EEE, Mata Rajkaur Institute of Engineering & technology, Rewari, Haryana, India Asst. Professor, Department

More information

Improvement in Power Quality of Distribution System Using STATCOM

Improvement in Power Quality of Distribution System Using STATCOM Improvement in Power Quality of Distribution System Using STATCOM 1 Pushpa Chakravarty, 2 Dr. A.K. Sharma 1 M.E. Scholar, Depart. of Electrical Engineering, Jabalpur Engineering College, Jabalpur, India.

More information

IJSRD - International Journal for Scientific Research & Development Vol. 3, Issue 08, 2015 ISSN (online):

IJSRD - International Journal for Scientific Research & Development Vol. 3, Issue 08, 2015 ISSN (online): IJSRD - International Journal for Scientific Research & Development Vol. 3, Issue 08, 2015 ISSN (online): 2321-0613 Reactive Power Compensation by using FACTS Devices under Non- Sinusoidal Condition by

More information

Implementation of D-STACTOM for Improvement of Power Quality in Radial Distribution System

Implementation of D-STACTOM for Improvement of Power Quality in Radial Distribution System Implementation of D-STACTOM for Improvement of Power Quality in Radial Distribution System Kolli Nageswar Rao 1, C. Hari Krishna 2, Kiran Kumar Kuthadi 3 ABSTRACT: D-STATCOM (Distribution Static Compensator)

More information

Performance Of Distributed Power Flow Controller (DPFC) Under Fault Condition

Performance Of Distributed Power Flow Controller (DPFC) Under Fault Condition RESEARCH ARTICLE OPEN CESS Performance Of Distributed Power Flow Controller (DPFC) Under Fault Condition Santosh Kumar Gupta M.Tech. Student, Department of Electrical Engineering National Institute of

More information

Installation and Benefits of FACTS Controllers and Voltage Stability in Electrical Power Systems

Installation and Benefits of FACTS Controllers and Voltage Stability in Electrical Power Systems Installation and Benefits of FACTS Controllers and Voltage Stability in Electrical Power Systems Sajid Ali 1, Sanjiv Kumar 2, Vipin Jain 2 1 Electrical Department, MIT Meerut (UP),India 2 Research Scholar,

More information

Design and Simulation of Fuzzy Logic controller for DSTATCOM In Power System

Design and Simulation of Fuzzy Logic controller for DSTATCOM In Power System Design and Simulation of Fuzzy Logic controller for DSTATCOM In Power System Anju Gupta Department of Electrical and Electronics Engg. YMCA University of Science and Technology anjugupta112@gmail.com P.

More information

Damping of Power System Oscillations and Control of Voltage Dip by Using STATCOM and UPFC

Damping of Power System Oscillations and Control of Voltage Dip by Using STATCOM and UPFC Volume 114 No. 10 2017, 487-496 ISSN: 1311-8080 (printed version); ISSN: 1314-3395 (on-line version) url: http://www.ijpam.eu ijpam.eu Damping of Power System Oscillations and Control of Voltage Dip by

More information

Fuzzy Control Scheme for Damping of Oscillations in Multi Machine. Power System with UPFC

Fuzzy Control Scheme for Damping of Oscillations in Multi Machine. Power System with UPFC Fuzzy Control Scheme for Damping of Oscillations in Multi Machine Power System with UPFC Aparna Kumari 1, Anjana Tripathi 2, Shashi Kala Kumari 3 1 MTech Scholar, Department of Electrical Engineering,

More information

Analysis and Enhancement of Voltage Stability using Shunt Controlled FACTs Controller

Analysis and Enhancement of Voltage Stability using Shunt Controlled FACTs Controller Volume 1, Issue 2, October-December, 2013, pp. 25-33, IASTER 2013 www.iaster.com, Online: 2347-5439, Print: 2348-0025 Analysis and Enhancement of Voltage Stability using Shunt Controlled FACTs Controller

More information

ENHANCING POWER SYSTEM STABILITY USING NEURO-FUZZY BASED UPFC

ENHANCING POWER SYSTEM STABILITY USING NEURO-FUZZY BASED UPFC ENHANCING POWER SYSTEM STABILITY USING NEURO-FUZZY BASED UPFC R.RAJA NIVEDHA 1, V.BHARATHI 2,P.S.DHIVYABHARATHI 3,V.RAJASUGUNA 4,N.SATHYAPRIYA 5 1 Assistant Professor, Department of EEE,Sri Eshwar college

More information

Er.JASPREET SINGH Er.SATNAM SINGH MATHARU Punjab technical university Dept. of Electrical Engg Jalandhar CTIEMT Jalandhar

Er.JASPREET SINGH Er.SATNAM SINGH MATHARU Punjab technical university Dept. of Electrical Engg Jalandhar CTIEMT Jalandhar International Journal of Scientific & Engineering Research, Volume, Issue, January- ISSN - POWER SYSTEM STABILITY IMPROVEMENT BY FACT DEVICES Er.JASPREET SINGH Punjab technical university Jalandhar Jaspreet@gmail.com

More information

EVALUATION OF A NEW MODEL FOR UPFC OPERATING AS IMPEDANCE COMPENSATION APPLIED TO MULTI- MACHINE SYSTEMS WITH NONLINEAR LOAD

EVALUATION OF A NEW MODEL FOR UPFC OPERATING AS IMPEDANCE COMPENSATION APPLIED TO MULTI- MACHINE SYSTEMS WITH NONLINEAR LOAD Journal of Engineering Science and Technology ol. 9, No. 6 (04) 678-689 School of Engineering, Taylor s University EALUATION OF A NEW MODEL FOR UPFC OPERATING AS IMPEDANCE COMPENSATION APPLIED TO MULTI-

More information

A NOVEL APPROACH ON INSTANTANEOUS POWER CONTROL OF D-STATCOM WITH CONSIDERATION OF POWER FACTOR CORRECTION

A NOVEL APPROACH ON INSTANTANEOUS POWER CONTROL OF D-STATCOM WITH CONSIDERATION OF POWER FACTOR CORRECTION IMPACT: International Journal of Research in Engineering & Technology (IMPACT: IJRET) ISSN(E): 2321-8843; ISSN(P): 2347-4599 Vol. 2, Issue 7, Jul 2014, 13-18 Impact Journals A NOVEL APPROACH ON INSTANTANEOUS

More information

Impact of Thyristor Controlled Series Capacitor on Voltage Profile of Transmission Lines using PSAT

Impact of Thyristor Controlled Series Capacitor on Voltage Profile of Transmission Lines using PSAT Impact of Thyristor Controlled Series Capacitor on Voltage Profile of Transmission Lines using PSAT Babar Noor 1, Muhammad Aamir Aman 1, Murad Ali 1, Sanaullah Ahmad 1, Fazal Wahab Karam. 2 Electrical

More information

Implementation of Line Stability Index for Contingency Analysis and Screening in Power Systems

Implementation of Line Stability Index for Contingency Analysis and Screening in Power Systems Journal of Computer Science 8 (4): 585-590, 2012 ISSN 1549-3636 2012 Science Publications Implementation of Line Stability Index for Contingency Analysis and Screening in Power Systems Subramani, C., Subhransu

More information

POWER FLOW CONTROL WITH UPFC IN POWER TRANSMISSION SYSTEM

POWER FLOW CONTROL WITH UPFC IN POWER TRANSMISSION SYSTEM POWER FLOW CONTROL WITH UPFC IN POWER TRANSMISSION SYSTEM Ms.Dolly P.Raut 1, Asst.Prof.R.H.Adware 2 1 Department of Electrical engineering, G.H.Raisoni College of Engineering, India 2 Department of Electrical

More information

Damping of Sub synchronous Resonance Using SSSC Based PWM Hysteresis Controller

Damping of Sub synchronous Resonance Using SSSC Based PWM Hysteresis Controller Damping of Sub synchronous Resonance Using SSSC Based PWM Hysteresis Controller E.Kumaresan*, S.Parthasarathy, B.Vidya Department of Electrical& Electronics Engineering Valliammai Engineering College,

More information

Analysis of FACTS Devices in Transmission System

Analysis of FACTS Devices in Transmission System Volume 02 - Issue 02 February 2017 PP. 22-27 Analysis of FACTS Devices in Transmission System Anand K. Singh, Harshad M. Mummadwar PG Scholar-Electrical Engineering (IPS)-DMIETR-Wardha, PG Scholar-Electrical

More information

Improvement of Transient stability in Power Systems with Neuro- Fuzzy UPFC

Improvement of Transient stability in Power Systems with Neuro- Fuzzy UPFC American Journal of Engineering Research (AJER) e-issn : 2320-0847 p-issn : 2320-0936 Volume-02, Issue-11, pp-48-60 www.ajer.org Research Paper Open Access Improvement of Transient stability in Power Systems

More information

MITIGATION OF VOLTAGE SAG AND SWELL FOR POWER QUALITY IMPROVEMENT USING DISTRIBUTED POWER FLOW CONTROLLER

MITIGATION OF VOLTAGE SAG AND SWELL FOR POWER QUALITY IMPROVEMENT USING DISTRIBUTED POWER FLOW CONTROLLER MITIGATION OF VOLTAGE SAG AND SWELL FOR POWER QUALITY IMPROVEMENT USING DISTRIBUTED POWER FLOW CONTROLLER Sai Lakshmi K Department of Electrical and Electronics engineering, G.Narayanamma Institute of

More information

A Voltage Controlled D-STATCOM for Power Quality Improvement with DVR

A Voltage Controlled D-STATCOM for Power Quality Improvement with DVR A Voltage Controlled D-STATCOM for Power Quality Improvement with DVR Rongali. Shiva Kumar P.G Student Scholar, Department of Electrical & Electronics Engineering, Gokul Group Of Institutions Abstract:

More information